ANSI STM3.1-2015 The Protection of Electrostatic Discharge Susceptible Items Ionization.pdf
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1、i ANSI/ESD STM3.1-2015 Revision of ANSI/ESD STM3.1-2006 For the Protection of Electrostatic Discharge Susceptible Items Ionization Electrostatic Discharge Association 7900 Turin Road, Bldg. 3 Rome, NY 13440 An American National Standard Approved November 19, 2015 ANSI/ESD STM3.1-2015 ESD Association
2、 Standard Test Method for the Protection of Electrostatic Discharge Susceptible Items - Ionization Approved June 18, 2014 EOS/ESD Association, Inc. ANSI/ESD STM3.1-2015 Electrostatic Discharge Association (ESDA) standards and publications are designed to serve the public interest by eliminating misu
3、nderstandings between manufacturers and purchasers, facilitating the interchangeability and improvement of products and assisting the purchaser in selecting and obtaining the proper product for his particular needs. The existence of such standards and publications shall not in any respect preclude a
4、ny member or non-member of the Association from manufacturing or selling products not conforming to such standards and publications. Nor shall the fact that a standard or publication is published by the Association preclude its voluntary use by non-members of the Association, whether the document is
5、 to be used either domestically or internationally. Recommended standards and publications are adopted by the ESDA in accordance with the ANSI Patent policy. Interpretation of ESDA Standards: The interpretation of standards in-so-far as it may relate to a specific product or manufacturer is a proper
6、 matter for the individual company concerned and cannot be undertaken by any person acting for the ESDA. The ESDA Standards Chairman may make comments limited to an explanation or clarification of the technical language or provisions in a standard, but not related to its application to specific prod
7、ucts and manufacturers. No other person is authorized to comment on behalf of the ESDA on any ESDA Standard. THE CONTENTS OF ESDAS STANDARDS AND PUBLICATIONS ARE PROVIDED “AS-IS,” AND ESDA MAKES NO REPRESENTATIONS OR WARRANTIES, EXPRESSED OR IMPLIED, OF ANY KIND WITH RESPECT TO SUCH CONTENTS. ESDA D
8、ISCLAIMS ALL REPRESENTATIONS AND WARRANTIES, INCLUDING, WITHOUT LIMITATION, WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR USE, TITLE AND NON-INFRINGEMENT. ESDA STANDARDS AND PUBLICATIONS ARE CONSIDERED TECHNICALLY SOUND AT THE TIME THEY ARE APPROVED FOR PUBLICATION. THEY ARE NOT
9、 A SUBSTITUTE FOR A PRODUCT SELLERS OR USERS OWN JUDGEMENT WITH RESPECT TO ANY PARTICULAR PRODUCT DISCUSSED, AND ESDA DOES NOT UNDERTAKE TO GUARANTEE THE PERFORMANCE OF ANY INDIVIDUAL MANUFACTURERS PRODUCTS BY VIRTUE OF SUCH STANDARDS OR PUBLICATIONS. THUS, ESDA EXPRESSLY DISCLAIMS ANY RESPONSIBILIT
10、Y FOR DAMAGES ARISING FROM THE USE, APPLICATION, OR RELIANCE BY OTHERS ON THE INFORMATION CONTAINED IN THESE STANDARDS OR PUBLICATIONS. NEITHER ESDA, NOR ITS MEMBERS, OFFICERS, EMPLOYEES OR OTHER REPRESENTATIVES WILL BE LIABLE FOR DAMAGES ARISING OUT OF, OR IN CONNECTION WITH, THE USE OR MISUSE OF E
11、SDA STANDARDS OR PUBLICATIONS, EVEN IF ADVISED OF THE POSSIBILITY THEREOF. THIS IS A COMPREHENSIVE LIMITATION OF LIABILITY THAT APPLIES TO ALL DAMAGES OF ANY KIND, INCLUDING WITHOUT LIMITATION, LOSS OF DATA, INCOME OR PROFIT, LOSS OF OR DAMAGE TO PROPERTY AND CLAIMS OF THIRD PARTIES. Published by: E
12、lectrostatic Discharge Association 7900 Turin Road, Bldg. 3 Rome, NY 13440 Copyright 2014 by ESD Association All rights reserved No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise, without the prior written permission of the publisher. Printed i
13、n the United States of America ISBN: 1-58537-285-4 CAUTION NOTICE DISCLAIMER OF WARRANTIES DISCLAIMER OF GUARANTY LIMITATION ON ESDAs LIABILITY ANSI/ESD STM3.1-2015 i (This foreword is not part of ESD Association Standard Test Method ANSI/ESD STM3.1-2015) FOREWORD The primary method used to limit st
14、atic charge for the protection of electrostatic discharge susceptible items in the work environment is grounding. However, grounding methods are not effective in removing static charges from the surfaces of non-conductive (insulative) or isolated conductive materials. Air ionization techniques may b
15、e employed to reduce these charges. The active parameters in charge neutralization are the conductivities of the air for each polarity. It would be appropriate to measure either the conductivities themselves or the ion concentrations for each polarity. This would determine the ability of the ionized
16、 air to neutralize a charge in a given location. (Annex B has been provided as an informative annex on performance of ionizers.) In practice, these measurements are difficult to make. A more feasible way of evaluating the ability of an ionizer to neutralize a static charge is to directly measure the
17、 charge decay time. Charges to be neutralized may be located on insulators as well as on isolated conductors. It is difficult to charge an insulator reliably and repeatably. Charge neutralization is more easily evaluated by measuring the rate of decay of the voltage of an isolated conductive plate.
18、The measurement of this decay should not interfere with or change the nature of the actual decay. Four practical methods of air ionization are addressed in this standard test method: 1. Radioactive Emission 2. High Voltage Corona from AC Electric Fields 3. High Voltage Corona from DC Electric Fields
19、 4. Soft X-ray Emission This standard test method 1 provides test methods and procedures that can be used when evaluating ionization equipment. The objective of the test methods described in this document is to generate meaningful, reproducible data. The test methods are not meant to be a recommenda
20、tion for any particular ionizer configuration. The wide variety of ionizers, and the environments within which they are used, will often require test methods different from those described in this standard test method. Users of this document should be prepared to adapt the test methods as required t
21、o produce meaningful data in their own application of ionizers. Similarly, the test conditions chosen in this standard test method do not represent a recommendation for acceptable ionizer performance. There is a wide range of item sensitivities to static charge. There is also a wide range of environ
22、mental conditions affecting the operation of ionizers. Performance specifications should be agreed between the user and manufacturer of the ionizer in each application. Users of this standard test method should be prepared to establish reasonable performance requirements for their own application of
23、 ionizers. Annex A has been provided as a normative annex to provide a method for measuring capacitance of the isolated conductive plate. The 2014 version of this document includes the use of contacting plate voltage measurements in addition to the previous non-contacting plate voltage measurements.
24、 Charged plate monitors (CPMs) using these technologies have been in use in the industry for many years. References were also added to ESD TR53 Compliance Verification of ESD Protective Equipment and Materials. 1 Standard Test Method (STM): A definitive procedure for the identification, measurement,
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